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MS

MP Space

They design and manufacture flight‑ready spacecraft power subsystems, focusing on high performance, repeatable, and easy‑to‑integrate solutions for microsatellite missions and larger platforms.

Eveleigh, New South WalesFounded 202413300+ followers
Updated 1 month ago

Funding

Funding not disclosed

Funding rounds are not available yet.

Founders

Founder details are not available yet.

Product

Problem

Spacecraft electrical power subsystems must be highly reliable, lightweight, and quickly integrable, yet traditional solutions are often custom-built, costly, and lack repeatable performance across multiple missions.

Solution

MP Space designs and manufactures flight‑ready power hardware that delivers high performance with minimal integration effort. Their Pack2 Li‑Ion battery platform provides configurable capacity and a common battery‑management system, thermal control, and electrical interface, enabling consistent power delivery for microsatellite and larger spacecraft. The MPPT1 unit combines solar maximum‑power‑point tracking with programmable charge regulation in a compact, flight‑qualified package. By applying rigorous engineering practices from high‑volume, high‑reliability industries, MP Space reduces development time, lowers risk, and supports repeat‑use across missions.

Target Audience

Primary customers are satellite manufacturers and mission integrators developing microsatellite‑class and larger spacecraft that require reliable, plug‑and‑play power solutions.

Features

  • Modular Li‑Ion battery system (Pack2) with configurable 432 Wh to 1 kWh capacities and standardized 28 V nominal output
  • Unified battery‑management system (BMS) and thermal control across all Pack2 variants for predictable performance
  • MPPT1 tracker/charger integrates solar MPPT and programmable charge regulation in a single flight‑ready unit
  • Designed for easy mechanical and electrical integration with common interfaces and minimal wiring
  • Built for repeatability and scalability, leveraging early‑stage testing to tighten tolerances and reduce design margins
  • Flight heritage planned for 2026 with options for cycle‑life or duration‑optimized cell technologies
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